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Fractionation mechanism of stable isotope in evaporating water body

机译:蒸发水体中稳定同位素的分馏机理

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Under Rayleigh equilibrium condition, stable isotopic ratio in residual water increases with the decrease of the residual water proportion f exponentially, and the fractionation rate of stable isotopes is inversely proportional to temperature. However, under kinetic evaporation condition, the fractionation of stable isotopes is not only related to the phase temperature but also influenced by the atmospheric humidity and the mass exchange between liquid and vapor phases. The ratio δ in residual water will not change with f after undergoing evaporation of a long time for great relative humidity. The rate that the evaporating water body reaches isotopic steady state is mainly dependent on the relative humidity in atmosphere. The analysis shows that the actual mean linear variety rates, about -30.0, of the δ~(18)O in residual water versus the residual water proportion at Nagqu and Amdo stations are consistent with the simulated process under temperature of 20℃ and relative humidity of 50%. The distillation line simulated under Rayleigh equilibrium condition is analogous to the global meteoric water line (MWL) as the temperature is about 20℃. Under non-equilibrium condition, the slope and constant values of distillation line are directly proportional to temperature and relative humidity. According to the basic data, the simulated distillation line is very consistent with the actual distillation line of Qinghai Lake.
机译:在瑞利平衡条件下,残留水中的稳定同位素比率随残留水比例f的减小呈指数增加,且稳定同位素的分馏率与温度成反比。然而,在动态蒸发条件下,稳定同位素的分馏不仅与相温度有关,而且还受大气湿度以及液相和气相之间的质量交换的影响。对于较大的相对湿度,长时间蒸发后,残留水中的比率δ不会随f的变化而变化。蒸发水体达到同位素稳态的速率主要取决于大气中的相对湿度。分析表明,在那曲站和安多站,残留水中δ〜(18)O的实际平均线性变化率约为-30.0,与残留水比例有关,与20℃和相对湿度下的模拟过程一致。 50%。在瑞利平衡条件下模拟的蒸馏管线类似于全球大气水管线(MWL),因为温度约为20℃。在非平衡条件下,蒸馏管线的斜率和常数值与温度和相对湿度成正比。根据基本数据,模拟的蒸馏线与青海湖的实际蒸馏线非常吻合。

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